Cenozoic Paleotopographic Evolution of the Tibetan Plateau
Cenozoic Paleotopographic Evolution of the Tibetan Plateau
批准号:
9973222
负责人:
David Rowley
金额:
$19.81万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-07-01 至 2005-06-30
中文摘要
9973222罗利青藏高原是地球上最大的高地形区域,与印度和亚洲之间的喜马拉雅碰撞明显相关。 由于对该地区构造历史的了解有限,有关高原隆升时间和性质的地球动力学模型一直难以评估。 现有的模型对地壳增厚的初始时间、速率、持续时间和空间分布作出了预测,但现有的数据未能对这些预测提供明确的检验。 目前数据中最严重的缺失之一是对古海拔随时间变化的定量估计,这种估计可用于区分模型。 本项目将利用非海相含碳酸盐湖相新生代盆地沉积物,尝试利用降水氧同位素组成的海拔依赖性。 许多其他因素也会影响这些矿床的同位素组成,但如果能够确定一个信号,它将提供有关青藏高原隆升历史的关键数据,从而可以完善和测试喜马拉雅造山作用的模型。
英文摘要
9973222RowleyThe Tibetan Plateau is the largest region of high topography on earth, and is clearly related to the Himalayan collision between India and Asia. Due to a limited understanding of the tectonic history of the region, Geodynamic models concerning the timing and nature of plateau uplift have been difficult to assess. Existing models make predictions regarding the initial timing, rate, duration and spatial distribution of crustal thickening, however available data fails to provide unequivocal tests of these predictions. One of the most serious absences from current data is a quantitative estimate of paleoaltitude through time that can be used to discriminated between models. This project will attempt to take advantage of altitudional dependence of the oxygen isotopic makeup of precipitation by use of non-marine lacustrine carbonate-containing, Cenozoic basin deposits. Many other factors affect the isotopic makeup of such deposits, but if a signal can be identified, it would provide key data about the uplift history of the Tibetan plateau that could refine and test models of Himalayan orogenesis.
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依托单位: